9 Phosphate Solubilization by Endophytes from the Tropical Plants
225
Santana EB, Marques ELS, Dias JCT (2016) Effects of phosphate-solubilizing bacteria, native
microorganisms and rock dust on Jatropha curcas L. growth. Genet Mol Res 15(4). https://doi.
org/10.4238/gmr.15048729
Sarbadhikary SB, Mandal NC (2018) Elevation of plant growth parameters in two solanaceous
crops with the application of endophytic fungus. Indian J Agr Sci 52:424–428
Schulz B, Guske S, Dammann U, Boyle C (1998) Endophytes host interactions II. Defining
symbiosis of the endophyte-host interaction. Symbiosis 25:213–227
Schulz B, Rommert AK, Dammann U, Aust HJ (1999) The endophyte-host interaction: a balanced
antagonism? Mycol. Res 103:1275–1283
Sharma et al (2013) Phosphate solubilizing microbes: sustainable approach for managing phosphorus deficiency in agricultural soils. SpringerPlus 2:587
Sharma S, Roy S (2015) Isolation and identification of a novel endophyte from a plant Amaranthus
spinosus. Int J Curr Microbiol App Sci 4:785–798
Shehata HR, Dumigan C, Watts S, Raizada MN (2017) An endophytic microbe from an unusual
volcanic swamp corn seeks and inhabits root hair cells to extract rock phosphate. Sci Rep 7:1347
Silva ACS, Chagas Junior AF, Oliveira LA, Chagas LFB (2011) Ocorrência de bactérias solubilizadoras de fosfato nas raízes de plantas de importância econômica em Manaus e Rio Preto da
Eva, Amazonas. J Biotec Biodivers 2:37–42
Silva HSA, Tozzi JPL, Terrasan CRF, Bettiol W (2012) Endophytic microorganisms from coffee
tissues as plant growth promoters and biocontrol agents of coffee leaf rust. Biol Control 63:62–67
Sims JT, Pierzynski GM (2005) Chemistry of phosphorus in soil. In: Tabatabai AM, Sparks DL
(eds) Chemical processes in soil, SSSA book series 8. SSSA, Madison, pp 151–192
Singh K, Singh B, Verma SK, Patra DD (2014) Jatropha curcas: a ten years story from hope to
despair. Renew Sustain Energy Rev 35:356–360
Son HJ, Park GT, Cha MS, Heo MS (2006) Solubilization of insoluble inorganic phosphates by
a novel salt- and pH-tolerant Pantoea agglomerans R-42 isolated from soybean rhizosphere.
Bioresource Technol 97:204–210
Strobel GA, Daisy B, Castillo U, Harper J (2004) Natural products from endophytic microorganisms.
J Nat Prod 67:257–268
Tam HT, Phuong TV, Diep CN (2018) Isolation and identification of endophytic bacteria associated with Rhizophora mucronate and Avicennia alba of Nam Can district, Ca Mau Mangrove
Ecosystem. IJIET 10:147–159
Tanwar SPS, Shaktawat MS (2003) Influence of phosphorus sources, levels and solubilizers on yield,
quality and nutrient up-take of soybean (Glycine max)—wheat (Triticum aestivum) cropping
system in southern Rajasthan. Indian J Agric Sci 73:3–7
Tikkoo A, Yadav SS, Kaushik N (2013) Effect of irrigation, nitrogen and potassium on seed yield
and oil content of Jatropha curcas in coarse textured soils of northwest India. Soil Tillage Res
134:142–146
Torres FL (2018) Isolamento, caracterização e potencial biotecnológico de fungos endofíticos
associados às plantas de cerrado. MS. Thesis, Universidade Federal de São Carlos
van der Heijden MGA, Bardgett RD, van Straalen NM (2008) The unseen majority: soil microbes
as drivers of plant diversity and productivity in terrestrial ecosystems. Ecol Lett 11:296–310
Vance CP (2001) Symbiotic nitrogen fixation and phosphorus acquisition. Plant nutrition in a world
of declining renewable sources. Plant Physiol 127:390–397
Vessey JK (2003) Plant growth promoting rhizobacteria as biofertilizers. Plant Soil 255:571–586
Vitorino LC, Silva FG, Soares MA, Souchie EL, Costa AC, Lima WC (2012) Solubilization of
calcium and iron phosphate and in vitro production of indoleacetic acid by endophytic isolates
of Hyptis marrubioides Epling (Lamiaceae). Int Res J Biotechnol 3:47–54
Vyas P, Bansal A (2018) Fungal endophytes: role in sustainable agriculture. In: Gehlot P, Singh J
(eds) Fungi and their role in sustainable development: Current Perspectives. Springer, Singapore,
pp 107–120
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